Exploring Ground Reflection Effects on Received Signal Strength Indicator and Path Loss in Far-Field Air-to-Air for Unmanned Aerial Vehicle-Enabled Wireless Communication

dc.contributor.authorDuangsuwan, Sarun
dc.contributor.authorJamjareegulgarn, Punyawi
dc.date.accessioned2026-08-06T10:47:22Z
dc.date.available2026-08-06T10:47:22Z
dc.date.issued2024-11-01
dc.description.abstractUnmanned aerial vehicle (UAV)-enabled wireless communications are becoming increasingly important in applications such as maritime and forest rescue operations. UAV systems often depend on wireless networking and mobile edge computing (MEC) devices for effective deployment, particularly in swarm UAV-enabled MEC configurations focusing on channel modeling and path loss characteristics for air-to-air (A2A) communications. This paper examines path loss characteristics in far-field (FF) ground reflection scenarios, specifically comparing two environments: FF1 (forest floor) and FF2 (seawater floor). LoRa modules operating at 868 MHz were deployed for communication between a transmitting UAV (Tx-UAV) and a receiving UAV (Rx-UAV) to conduct this study. We investigated the received signal strength indicator (RSSI) and path loss characteristics across channel bandwidths of 125 kHz and 250 kHz and spread factors (SF) of 7, 9, and 12. Experimental results show that ground reflection has minimal impact in the FF1 scenario, whereas, in the FF2 scenario, ground reflection significantly influences communication. Therefore, in the seawater environment, a UAV-enabled LoRa MEC configuration using a 250 kHz bandwidth and an SF of 7 is recommended to minimize the effects of ground reflection.
dc.identifier.citationDrones, 8(11), 2024
dc.identifier.doi10.3390/drones8110677
dc.identifier.issn2504446X
dc.identifier.other2-s2.0-85210317913
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/15963
dc.sourceDrones
dc.subjectA2A
dc.subjectground reflection
dc.subjectmobile edge computing
dc.subjectpath loss
dc.subjectRSSI
dc.subjectUAV-enabled wireless communications
dc.titleExploring Ground Reflection Effects on Received Signal Strength Indicator and Path Loss in Far-Field Air-to-Air for Unmanned Aerial Vehicle-Enabled Wireless Communication
dc.typeArticle

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